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How to select the optimal monitoring locations for an aerobiological network: A case of study in central northwest of Spainhttps://doi.org/10.1016/j.scitotenv.2022.154370Rodríguez-Fernández A., Oteros J., Vega-Maray A.M., Valencia-Barrera R.M., Galán C., Fernández-González D.Jun 2022ArticleScience of the Total Environment
Unravelling the main mechanism responsible for nocturnal CO2 uptake by dryland soilshttps://doi.org/10.1016/j.scitotenv.2024.171751Kim M., Lopez-Canfin C., Lázaro R., Sánchez-Cañete E.P., Weber B.May 2024ArticleScience of the Total Environment
Towards European automatic bioaerosol monitoring: Comparison of 9 automatic pollen observational instruments with classic Hirst-type trapshttps://doi.org/10.1016/j.scitotenv.2022.161220Maya-Manzano J.M., Tummon F., Abt R., Allan N., Bunderson L., Clot B., Crouzy B., Daunys G., Erb S., Gonzalez-Alonso M., Graf E., Grewling Ł., Haus J., Kadantsev E., Kawashima S., Martinez-Bracero M., Matavulj P., Mills S., Niederberger E., Lieberherr G., Lucas R.W., O'Connor D.J., Oteros J., Palamarchuk J., Pope F.D., Rojo J., Šaulienė I., Schäfer S., Schmidt-Weber C.B., Schnitzler M., Šikoparija B., Skjøth C.A., Sofiev M., Stemmler T., Triviño M., Zeder Y., Buters J.Mar 2023ArticleScience of the Total Environment
Phenomenology and geographical gradients of atmospheric deposition in southwestern Europe: Results from a multi-site monitoring networkhttps://doi.org/10.1016/j.scitotenv.2020.140745Pey J., Larrasoaña J.C., Pérez N., Cerro J.C., Castillo S., Tobar M.L., de Vergara A., Vázquez I., Reyes J., Mata M.P., Mochales T., Orellana J.M., Causapé J.Nov 2020ArticleScience of the Total Environment
Assessing pollination disservices of urban street-trees: The case of London-plane tree (Platanus x hispanica Mill. ex Münchh)https://doi.org/10.1016/j.scitotenv.2020.139722Cariñanos P., Ruiz-Peñuela S., Valle A.M., de la Guardia C.D.Oct 2020ArticleScience of the Total Environment
Projected hydrologic changes over the north of the Iberian Peninsula using a Euro-CORDEX multi-model ensemblehttps://doi.org/10.1016/j.scitotenv.2021.146126Yeste P., Rosa-Cánovas J.J., Romero-Jiménez E., García-Valdecasas Ojeda M., Gámiz-Fortis S.R., Castro-Díez Y., Esteban-Parra M.J.Jul 2021ArticleScience of the Total Environment
Post-fire regeneration dynamics of heterogeneous Mediterranean ecosystems using Landsat and ALS datahttps://doi.org/10.1016/j.scitotenv.2025.180435Velasco Pereira E.A., Navarro-Cerrillo R.M.Oct 2025ArticleScience of the Total Environment
Activation properties of aerosol particles as cloud condensation nuclei at urban and high-altitude remote sites in southern Europehttps://doi.org/10.1016/j.scitotenv.2020.143100Rejano F., Titos G., Casquero-Vera J.A., Lyamani H., Andrews E., Sheridan P., Cazorla A., Castillo S., Alados-Arboledas L., Olmo F.J.Mar 2021ArticleScience of the Total Environment
Future changes in land and atmospheric variables: An analysis of their couplings in the Iberian Peninsulahttps://doi.org/10.1016/j.scitotenv.2020.137902García-Valdecasas Ojeda M., Yeste P., Gámiz-Fortis S.R., Castro-Díez Y., Esteban-Parra M.J.Jun 2020ArticleScience of the Total Environment
Impact of urban aerosols on the cloud condensation activity using a clustering modelhttps://doi.org/10.1016/j.scitotenv.2022.159657Rejano F., Casquero-Vera J.A., Lyamani H., Andrews E., Casans A., Pérez-Ramírez D., Alados-Arboledas L., Titos G., Olmo F.J.Feb 2023ArticleScience of the Total Environment